Capacitor Bank Panel Design to Improve Industrial Power System Efficiency and Safety

Yogi Adhimanata, Shazana Dhiya A
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引用次数: 1

Abstract

Industrial loads generally use control equipment and power electronics that use semiconductor materials that are very sensitive to voltage fluctuations. As reactive power compensation, industries usually use capacitor banks to increase power factor, reduce losses and increase line capacity. But it turns out that the use of capacitor banks also causes problems related to capacitor bank switching during the energizing process. During the energizing process, transient voltages and currents will be generated which can potentially damage control equipment, power electronic equipment, switching equipment and the capacitor bank itself. The Capacitor Bank panel assembly process involves the preparation of components such as MCB (Miniature Circuit Breaker), MCCB (Molded Case Circuit Breaker), Capacitor Bank, and other components. After that, these components are carefully assembled according to the pre-prepared design. Next, the installation of the Capacitor Bank panel involves mounting the panel to the location according to the plan and connecting it to the building's main power system. Accurate wiring and meticulous testing are required to ensure that the panels function properly. Therefore, a good understanding of the assembly and installation process of Capacitor Bank panels is essential to ensure efficient, and safety.
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提高工业电力系统效率和安全性的电容柜面板设计
工业负载通常使用控制设备和电力电子设备,这些设备使用对电压波动非常敏感的半导体材料。作为无功补偿,工业通常使用电容器组来提高功率因数、降低损耗和增加线路容量。但事实证明,电容器组的使用也会带来通电过程中与电容器组切换有关的问题。在通电过程中,会产生瞬态电压和电流,有可能损坏控制设备、电力电子设备、开关设备和电容器组本身。电容器组面板组装过程包括准备 MCB(微型断路器)、MCCB(塑壳断路器)、电容器组等组件。然后,根据事先准备好的设计方案对这些组件进行精心组装。接下来,电容柜面板的安装包括根据计划将面板安装到指定位置,并将其连接到大楼的主供电系统。为确保面板正常工作,需要进行精确的布线和细致的测试。因此,充分了解电容柜面板的组装和安装过程对于确保高效和安全至关重要。
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